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Comprehensive Analysis of Human Cells Motion under an Irrotational AC Electric Field in an Electro-Microfluidic Chip

机译:电微流控芯片中旋转交流电场下人体细胞运动的综合分析

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摘要

AC electrokinetics is a versatile tool for contact-less manipulation or characterization of cells and has been widely used for separation based on genotype translation to electrical phenotypes. Cells responses to an AC electric field result in a complex combination of electrokinetic phenomena, mainly dielectrophoresis and electrohydrodynamic forces. Human cells behaviors to AC electrokinetics remain unclear over a large frequency spectrum as illustrated by the self-rotation effect observed recently. We here report and analyze human cells behaviors in different conditions of medium conductivity, electric field frequency and magnitude. We also observe the self-rotation of human cells, in the absence of a rotational electric field. Based on an analytical competitive model of electrokinetic forces, we propose an explanation of the cell self-rotation. These experimental results, coupled with our model, lead to the exploitation of the cell behaviors to measure the intrinsic dielectric properties of JURKAT, HEK and PC3 human cell lines.
机译:AC电动动力学是一种用于无接触操作或表征细胞的通用工具,已被广泛用于基于从基因型翻译为电子表型的分离。细胞对交流电场的响应导致电动现象的复杂组合,主要是介电泳和电动动力。正如最近观察到的自旋转效应所说明的那样,人类细胞在交流电动力学方面的行为仍然不清楚。我们在这里报告和分析人体细胞在中等电导率,电场频率和强度的不同条件下的行为。我们还观察到在没有旋转电场的情况下人类细胞的自旋转。基于电动势的分析竞争模型,我们提出了细胞自转的解释。这些实验结果,再加上我们的模型,导致利用细胞行为来测量JURKAT,HEK和PC3人类细胞系的固有介电性能。

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